Cui Lei, Tao Sha, Yin Heng-Chan, Shen Qi-Qi, Wang Yuan, Zhu Li-Na, Li Xiu-Juan
College of P.E. and Sports, Beijing Normal University, Beijing, China.
State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University, Beijing, China.
Front Psychol. 2021 Jun 29;12:665419. doi: 10.3389/fpsyg.2021.665419. eCollection 2021.
This study used resting-state functional magnetic resonance imaging to investigate the effects of 8 weeks of Tai Chi Chuan and general aerobic exercise on the topological parameters of brain functional networks, explored the advantages of Tai Chi Chuan for improving functional network plasticity and cognitive flexibility, and examined how changes in topological attributes of brain functional networks relate to cognitive flexibility. Thirty-six healthy adults were grouped into Tai Chi Chuan (Bafa Wubu of Tai Chi), general aerobic exercise (brisk walking), and control groups. All of the subjects underwent fMRI and behavioral assessment before and after the exercise intervention. Tai Chi Chuan exercise significantly enhanced the clustering coefficient and local efficiency compared with general aerobic exercise. Regarding the nodal properties, Tai Chi Chuan significantly enhanced the nodal clustering coefficient of the bilateral olfactory cortex and left thalamus, significantly reduced the nodal clustering coefficient of the left inferior temporal gyrus, significantly improved the nodal efficiency of the right precuneus and bilateral posterior cingulate gyrus, and significantly improved the nodal local efficiency of the left thalamus and right olfactory cortex. Furthermore, the behavioral performance results demonstrated that cognitive flexibility was enhanced by Tai Chi Chuan. The change in the nodal clustering coefficient in the left thalamus induced by Tai Chi Chuan was a significant predictor of cognitive flexibility. These findings demonstrated that Tai Chi Chuan could promote brain functional specialization. Brain functional specialization enhanced by Tai Chi Chuan exercise was a predictor of greater cognitive flexibility.
本研究采用静息态功能磁共振成像技术,探究8周太极拳练习和一般有氧运动对脑功能网络拓扑参数的影响,探讨太极拳在改善功能网络可塑性和认知灵活性方面的优势,并研究脑功能网络拓扑属性的变化与认知灵活性之间的关系。36名健康成年人被分为太极拳组(太极拳八法五步)、一般有氧运动组(快走)和对照组。所有受试者在运动干预前后均接受功能磁共振成像和行为评估。与一般有氧运动相比,太极拳练习显著提高了聚类系数和局部效率。关于节点属性,太极拳显著提高了双侧嗅觉皮层和左侧丘脑的节点聚类系数,显著降低了左侧颞下回的节点聚类系数,显著提高了右侧楔前叶和双侧后扣带回的节点效率,以及左侧丘脑和右侧嗅觉皮层的节点局部效率。此外,行为表现结果表明,太极拳提高了认知灵活性。太极拳引起的左侧丘脑节点聚类系数变化是认知灵活性的显著预测指标。这些发现表明,太极拳可以促进脑功能特化。太极拳练习增强的脑功能特化是更高认知灵活性的预测指标。